Open-type heavy hydraulic motor

A hydraulic motor, an open technology, applied in the field of hydraulic motors, can solve the problems of inconvenient installation, maintenance, large energy loss, high cost of use, etc., to achieve the effect of easy installation and maintenance, uniform torque and speed, and super torque

Active Publication Date: 2012-05-02
南通艾德森机电设备有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Low-speed and high-torque rotating devices are widely used in various mechanical equipment, such as large winches, vertical mills, mixers, etc. Most of the rotating devices currently used are mechanical transmission structures or hydraulic motor transmission structures. The gear is used to drive the rotating device, not only the structure is more complex, the energy loss is greater, but also it is difficult to meet the working conditions of outputting super high power and super high torque, because after reaching a certain order of magnitude, it will be very difficult to increase the power of the motor, and the cost It is very high, and its volume / efficiency is relatively high, which limits the range of use of mechanically driven rotating devices; traditional hydraulic motor devices are all closed structures, and their torque is determined by the flow rate and oil pressure of the hydraulic motor. After a certain level, it will be very difficult to increase the flow rate and flow rate, and there is no advantage in outputting large torque or super torque, it is extremely difficult to achieve, and it is not easy to install and maintain, and its use cost is relatively high.

Method used

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  • Open-type heavy hydraulic motor
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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] Such as Figure 1 to Figure 12As shown, the open heavy-duty hydraulic motor includes a fixed bracket 10, a rotary valve 3 fixed on the bracket 10 by bolts, a crankshaft 5 installed in the center of the bracket through bearings 9 at both ends, and an eccentric section 5a around the crankshaft 5. Six double-acting oil cylinders 1, 2, 7, 8, 47, 48 are evenly distributed, the bottom of each double-acting oil cylinder is hinged with the bracket 10 through a pin, and the piston rod of each double-acting oil cylinder is fixedly connected with a fastener 4. The front end of each fastener 4 is provided with an arc surface matching the eccentric section 5a of the crankshaft, and two shoulders are provided on the eccentric section 5a of the crankshaft, and two sets of plates 38, 39 are respectively slidably mounted on both sides of the two shoulders , all the fasteners 4 are connected to the two sets of plates 38, 39 through connecting bolts 40, and the fasteners 4 and the two set...

Embodiment 2

[0042] Such as Figure 13 As shown, the difference between the present embodiment and the first embodiment is only that the respective piston rods of the double-acting oil cylinders 1, 2, 7, 8, 47 and 48 are fixedly connected with the respective combined cylindrical sliding sleeves 49, and all the sliding sleeves 49 The rotatable connection is realized by being fitted in the eccentric section 5a of the crankshaft in the axial direction, and the double-acting oil cylinders are also arranged in the axial direction at the same time. advantage.

Embodiment 3

[0044] Such as Figure 14 and 15 As shown, the difference between this embodiment and Embodiment 1 is that five double-acting oil cylinders 51, 52, 53, 54, 55 are evenly distributed around the eccentric section 5a of the crankshaft 5, and the bottom of each double-acting oil cylinder is connected to the The bracket is hinged by a pin shaft, and the piston rod of each double-acting cylinder is fixedly connected with a fastener 4, and the front end of each fastener 4 is provided with an arc surface matched with the eccentric section 5a of the crankshaft; on the valve body 12 of the rotary valve Ten working oil ports 60 to 69 are evenly distributed, and the five spaced working oil ports 60, 62, 64, 66, 68 are connected with the rodless chambers of the respective double-acting oil cylinders 51, 52, 53, 54, 55 respectively in sequence. The oil ports 51a, 52a, 53a, 54a, and 55a are connected through pipelines, and the working oil port 65 located on the same line as the working oil ...

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Abstract

The invention discloses an open-type heavy hydraulic motor which comprises a bracket, a spin valve and a crank shaft arranged at the center of the bracket, wherein one end of the crank shaft is connected with the outer end part of a valve core; more than four uniformly distributed double-acting oil cylinders are arranged around the eccentric section of the crank shaft; the bottom of each double-acting oil cylinder is hinged with the bracket, and the piston rod of each double-acting oil cylinder is connected with the eccentric section of the crank shaft through a rotatable connection structure; a valve body is provided with an oil inlet, an oil outlet and working oil ports of which the number is corresponding to that of the oil cylinders; all the working oil ports are uniformly distributed on the circumference of the valve body; the circumference of the valve core is provided with two annular grooves and two sectorial oil grooves; the corresponding central angles of the two sectorial oil grooves are greater than 90 degrees and less than 180 degrees; the two sectorial oil grooves are respectively connected with the corresponding annular grooves through connecting oil ways; and each working oil port is connected with the rod cavity oil port and rodless cavity oil port of each double-acting oil cylinder according to the corresponding relations. According to the invention, an extra-large torque can be easily realized, and the output torque and rotation speed are more uniform; and the open-type heavy hydraulic motor is convenient to install and maintain and has a wider application range.

Description

technical field [0001] The invention relates to a hydraulic motor. Background technique [0002] Low-speed and high-torque rotating devices are widely used in various mechanical equipment, such as large winches, vertical mills, mixers, etc. Most of the rotating devices currently used are mechanical transmission structures or hydraulic motor transmission structures. The gear is used to drive the rotating device, not only the structure is more complex, the energy loss is greater, but also it is difficult to meet the working conditions of outputting super high power and super high torque, because after reaching a certain order of magnitude, it will be very difficult to increase the power of the motor, and the cost It is very high, and its volume / efficiency is relatively high, which limits the range of use of mechanically driven rotating devices; traditional hydraulic motor devices are all closed structures, and their torque is determined by the flow rate and oil pressure of ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F03C1/03F03C1/053F03C1/34
Inventor 王利陈斌
Owner 南通艾德森机电设备有限公司
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